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      • KCI등재

        Characterization and mechanism analysis of graphite/C-doped TiO2 composite for enhanced photocatalytic performance

        Jialin Jia,Dong Li,Jiafeng Wan,Xiujuan Yu 한국공업화학회 2016 Journal of Industrial and Engineering Chemistry Vol.33 No.-

        Graphite/C-doped TiO2 composite was synthesized through a modified sol–gel reaction. DRS resultsindicated that light absorbance edge of graphite/C-doped TiO2 was clearly red-shifted to visible lightregion by doping with C. SPS results displayed that separation efficiency of photoinduced charge carriersof graphite/C-doped TiO2 were greatly increased by coupling with graphite. Moreover, the photocatalyticperformance of composite was evaluated by the degradation of methyl orange (MO). Results showedthat graphite/C-doped TiO2 exhibited higher photocatalytic activity for MO than that of pristine TiO2 andP25, which was mainly attributed to the high crystallization, large surface hydroxyl groups, intensevisible light absorption and effective separation of photoinduced charge carriers.

      • KCI등재

        Effects of hydrothermal parameters on the physicochemical property and photocatalytic degradation of bisphenol A of Ti-based TiO2 nanomaterials

        Dong Li,Yunzhou Chen,Jialin Jia,Haiyang He,Wei Shi,Jianghua Yu,Jun Ma 한국공업화학회 2022 Journal of Industrial and Engineering Chemistry Vol.109 No.-

        Effects of hydrothermal parameters on morphology, crystal structure, light absorption, separation efficiencyof photo-generated charge carriers, and photocatalytic removal of Bisphenol A (BPA) of Ti-basedTiO2 nanomaterials were systematically investigated. Through changing hydrothermal parameters,TiO2 nanobelts, TiO2 nanosheets and TiO2 nanowires were prepared. With increasing NaOH concentration,hydrothermal temperature, and hydrothermal time, more TiO2 with (101) crystal plane grew onTi substrate, resulting in higher crystallinity. The UV-light absorption enhanced with increasing NaOHconcentration, but decreased with improving hydrothermal temperature, hydrothermal time, and HClconcentration. Variation of UV-light absorption was mainly affected by morphology, and UV-light absorptionof TiO2 nanomaterials with different morphologies was arranged in order ofnanobelts > nanosheets > nanowires. The hydrothermal growth of TiO2 nanomaterials on Ti plate conformedto Ostwald ripening mechanism. Variation trend of photo-generated current was consistent withthat of BPA degradation, they both first increased and then decreased within investigated range. The optimalNaOH concentration, hydrothermal temperature, hydrothermal time, and HCl washing concentrationwere 1 M, 170℃, 28 h, and 0.1 M, respectively. Under this condition, Ti-based TiO2 nanosheets exhibitedthe highest BPA removal efficiency (92.7%), which was due to highly ordered nanosheet structure, goodcrystallinity, appropriate UV-light absorption and high separation efficiency of electron-hole pairs.

      • KCI우수등재

        Effect of serotonin on the cell viability of the bovine mammary alveolar cell-T (MAC-T) cell line

        Xusheng Dong,Chen Liu,Jialin Miao,Xueyan Lin,Yun Wang,Zhong-Hua Wang,Qiuling Hou 한국축산학회 2022 한국축산학회지 Vol.64 No.5

        5-Hydroxytryptamine (5-HT), a monoamine, as a local regulator in the mammary gland is achemical signal produced by the mammary epithelium cell. In cows, studies have shown that5-HT is associated with epithelial cell apoptosis during the degenerative phase of the mammarygland. However, studies in other tissues have shown that 5-HT can effectively promotecell viability. Whether 5-HT could have an effect on mammary cell viability in dairy cows isstill unknown. The purpose of this study was to determine: (1) effect of 5-HT on the viability ofbovine mammary epithelial cells and its related signaling pathways, (2) interaction betweenprolactin (PRL) and 5-HT on the cell viability. The bovine mammary alveolar cell-T (MAC-T)were cultured with different concentrations of 5-HT for 12, 24, 48 or 72 hours, and then wereassayed using cell counting kit-8, polymerase chain reaction (PCR) and immunobloting. Theresults suggested that 20 μM 5-HT treatment for 12 or 24 h promote cell viability, which wasmainly induced by the activation of 5-HT receptor (5-HTR) 1B and 4, because the increasecaused by 5-HT vanished when 5-HTR 1B and 4 was blocked by SB224289 and SB204070. And protein expression of mammalian target of rapamycin (mTOR), eukaryotic translationelongation factor 2 (eEF2), janus kinase 2 (JAK2) and signal transducer and activator of transcription5 (STAT5) were decreased after blocking 5-HT 1B and 4 receptors. When MAC-Tcells were treated with 5-HT and PRL simultaneously for 24 h, both the cell viability and thelevel of mTOR protein were significantly higher than that cultured with 5-HT or PRL alone. Inconclusion, our study suggested that 5-HT promotes the viability of MAC-T cells by 5-HTR1B and/or 4. Furthermore, there is a reciprocal relationship between PRL and 5-HT.

      • KCI등재

        Optimal sensor placement for cable force monitoring using spatial correlation analysis and bond energy algorithm

        Shunlong Li,Jialin Dong,Wei Lu,Hui Li,Wencheng Xu,Yao Jin 국제구조공학회 2017 Smart Structures and Systems, An International Jou Vol.20 No.6

        Cable force monitoring is an essential and critical part of the safety evaluation of cable-supported bridges. A reasonable cable force monitoring scheme, particularly, sensor placement related to accurate safety assessment and budget costsaving becomes a major concern of bridge administrative authorities. This paper presents optimal sensor placement for cable force monitoring by selecting representative sensor positions, which consider the spatial correlativeness existing in the cable group. The limited sensors would be utilized for maximizing useful information from the monitored bridges. The maximum information coefficient (MIC), mutual information (MI) based kernel density estimation, as well as Pearson coefficients, were all employed to detect potential spatial correlation in the cable group. Compared with the Pearson coefficient and MIC, the mutual information is more suitable for identifying the association existing in cable group and thus, is selected to describe the spatial relevance in this study. Then, the bond energy algorithm, which collects clusters based on the relationship of surrounding elements, is used for the optimal placement of cable sensors. Several optimal placement strategies are discussed with different correlation thresholds for the cable group of Nanjing No.3 Yangtze River Bridge, verifying the effectiveness of the proposed method.

      • SCIESCOPUSKCI등재

        Structurally Related Cytotoxic Effects of Flavonoids on Human Cancer Cells in Vitro

        Chang, Hui,Mi, Mantian,Ling, Wenhua,Zhu, Jun-Dong,Zhang, Qianyong,Wei, Na,Zhou, Yong,Tang, Yong,Yuan, Jialin 대한약학회 2008 Archives of Pharmacal Research Vol.31 No.9

        Flavonoids exist extensively in the human diet, and a variety of health effects have been ascribed to them. The cytotoxic effects of 23 flavonoids on breast cancer cells (MDA-MB-231 and MCF-7), col-orectal carcinoma cells (LoVo and DLD-l) and prostatic cancer cells (PC3) were investigated. By comparing the cytotoxicity ($EC_{50}$) of selected molecules that differ in only one structure element, we identified several structural properties associated with enhanced cytotoxicity, including the presence of the 2,3-double bond, appropriate hydroxyl numbers, 3-OH, 6-OH and ortho-hydroxylation in ring B. Flavonoids with a 5-OH exhibited lower cytotoxicity than their non-hydroxylated counterparts. Results indicated that 3,6-dihydroxylflavone showed the most potent cytotoxic effect on these cancer cells. The appearance of apoptotic cells with DAPI staining was observed in cancer cells under 3,6-dihydroxylflavone treatment, and the apoptosis analysis by flow cytometry also showed that 3,6-dihydroxylflavone induced apoptotic cell death in these cancer cells. These results revealed the structurally related toxicity of flavonoids on human cancer cells, and indicates that 3,6-dihydroxylflavone is an active compound worthy of development for cancer chemotherapy.

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